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首页> 外文期刊>The Journal of Prosthetic Dentistry >Effect of polishing systems on stain susceptibility and surface roughness of nanocomposite resin material
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Effect of polishing systems on stain susceptibility and surface roughness of nanocomposite resin material

机译:抛光系统对纳米复合树脂材料污渍敏感性和表面粗糙度的影响

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Statement of problem. Different polishing systems vary in their effect on reducing surface roughness and stain susceptibility of dental composite resin materials. Purpose. The purpose of this study was to compare the effect of 3 polishing systems on the stain susceptibility and surface roughness of 2 nanocomposite resins and a microhybrid composite resin. Material and methods. Forty-five disks (2×10 mm) each were fabricated of 2 nanocomposite resins (Filtek Supreme XT and Tetric EvoCeram) and 1 microhybrid composite resin (Z250). Both sides of the disks were wet finished, and 1 side was polished with PoGo, Astropol, or Hi-Shine (n=5). Unpolished surfaces served as controls. The average roughness (Ra, μm) was measured with a profilometer, and the baseline color was recorded with a spectrophotometer. All specimens were incubated while soaking in a staining solution of coffee, green tea, and berry juice for 3 weeks. The color was recorded again, and the data were analyzed with 2-way ANOVA at α=.05 and Tukey multiple comparison tests. Results. All polishing systems improved the staining resistance of Filtek Supreme XT and Z250 but did not affect that of Tetric EvoCeram. The surface color of Filtek Supreme XT was changed significantly and was the smoothest after polishing with PoGo, whereas Hi-Shine produced significantly rougher surfaces but with the lowest color change. Hi-Shine produced the highest color change in Z250. The surface roughness did not differ significantly between the other polishing systems. Tetric EvoCeram showed no significant differences in color change or surface roughness. Conclusions. Staining susceptibility and surface roughness depend mainly on material composition and on the polishing procedures. Polishing improves the staining resistance of composite resins. Nanocomposite resins did not exhibit better staining resistance or surface roughness than microhybrid composite resin.
机译:问题陈述。不同的抛光系统在减少牙科复合树脂材料的表面粗糙度和污渍敏感性方面的效果各不相同。目的。这项研究的目的是比较3种抛光系统对2种纳米复合树脂和微杂化复合树脂的污渍敏感性和表面粗糙度的影响。材料与方法。分别由2种纳米复合树脂(Filtek Supreme XT和Tetric EvoCeram)和1种微混合复合树脂(Z250)制成四十五个圆盘(2×10 mm)。圆盘的两面均经过湿润处理,并用PoGo,Astropol或Hi-Shine(n = 5)对其中的一面进行抛光。未抛光的表面用作控件。用轮廓仪测量平均粗糙度(Ra,μm),并用分光光度计记录基线颜色。将所有标本孵育,同时将其浸泡在咖啡,绿茶和浆果汁的染色溶液中3周。再次记录颜色,并使用α= .05的2通ANOVA和Tukey多重比较测试分析数据。结果。所有抛光系统均改善了Filtek Supreme XT和Z250的耐污染性,但并未影响Tetric EvoCeram的耐污染性。 Filtek Supreme XT的表面颜色发生了显着变化,并且在用PoGo抛光后最光滑,而Hi-Shine产生的表面明显更粗糙,但颜色变化最小。 Hi-Shine在Z250中产生了最大的颜色变化。其他抛光系统之间的表面粗糙度没有显着差异。 Tetric EvoCeram在颜色变化或表面粗糙度方面无显着差异。结论。染色敏感性和表面粗糙度主要取决于材料组成和抛光程序。抛光可改善复合树脂的耐污染性。纳米复合树脂没有表现出比微杂化复合树脂更好的耐污染性或表面粗糙度。

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